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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >Catalytic synthesis of high aspect ratio Al2O3 impregnated carbon nanotubes used to improve thermophysical properties of nanofluids with a case study on an industrial gasoline-water heat exchanger
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Catalytic synthesis of high aspect ratio Al2O3 impregnated carbon nanotubes used to improve thermophysical properties of nanofluids with a case study on an industrial gasoline-water heat exchanger

机译:高纵横比Al2O3浸渍碳纳米管的催化合成用于改善纳米流体热物理性质的工业汽油 - 水热交换器案例研究

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Thermophysical properties of nanofluids containing multiwall carbon nanotubes (MWCNTs) are highly dependent on the surface morphology of the MWCNTs. In this study, a vertical-injection reactor was used to produce Al2O3-impregnated MWCNTs by free substrate catalytic cracking in the presence of aluminum isopropoxide. The synthesized MWCNTs were characterized by BET SEM, TEM, XRD, and TGA. The Al2O3 nanoparticles act as nano-spacers, reducing the entanglement of MWCNTs, thereby increasing the aspect ratio to 5500. These MWCNTs were used to prepare nanofluids with low concentrations (NF0.1, NF0.3, and NF0.5 wt%) in water. Thermophysical properties of the nanofluids were determined under static lab conditions. Values of the thermal conductivity, heat capacity, and viscosity increase with increasing concentration of MWCNTs. The thermophysical properties were further used to calculate the heat transfer rate (q) and the pressure drop (Delta P) in a full-scale gasoline-water shell and tube heat exchanger used in the petrochemical industry. When NF0.1 is used in the heat exchanger, q increases by 34% with a Delta P penalty of 5%. A comparison of Nu, Pr, and Re of water with those of the nanofluids under given industrial flow conditions, indicates that the effects due to the viscosity of the nanofluids significantly influence the heat transfer mode distribution.
机译:含有多壁碳纳米管(MWCNT)的纳米流体的热物理性质高度依赖于MWCNT的表面形态。在该研究中,在异丙氧化物存在下,使用垂直注射反应器通过游离底物催化裂化产生Al 2 O 3浸渍的MWCNT。通过BET SEM,TEM,XRD和TGA表征合成的MWCNT。 Al2O3纳米颗粒充当纳米间隔物,降低MWCNT的缠结,从而将纵横比增加到5500.这些MWCNT用于制备具有低浓度(NFO1,NFO 3和NFO 5 WT%)的纳米流体水。在静态实验室条件下测定纳米流体的热物理性质。随着MWCNT的浓度增加,导热率,热容量和粘度增加的值。热物理性质进一步用于计算在石油化工行业中使用的全级汽油 - 水壳和管式热交换器中的传热速率(Q)和压降(DELTA P)。当在热交换器中使用NFO 1时,Q随着ΔP的惩罚5%增加34%。在给定工业流动条件下对纳米流体的纳米流体的诺,Pr和Re的比较表明,由于纳米流体的粘度引起的效果显着影响了传热模式分布。

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